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On the function and robustness of skin-electrode interfaces for high-density electromyography: Towards ubiquitous integration with robotics devices

机译:关于高密度肌电图形的函数和鲁棒性:与机器人设备无处不在的集成

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High-density electromyography is a technique to infer muscle activity from large numbers of electrodes placed over the muscle just a few millimetres apart. Due to the spatial density of electrode arrays, novel recommendations regarding skin-electrode interfaces are required, noting inconsistencies throughout literature. In addition, for HD-EMG to become a viable option for interfacing with wearable robotics, various pressure effects on performance must be investigated. 11 subjects were recruited to analyse the function and robustness of common and novel conductive materials including gel, viscous gel, conductive paint, z-tape and dry configurations by comparing skin resistances and connectivity. The gel conditions led to the lowest skin resistance with an overall median of 65.72kΩ. Viscous gel resulted in improved connectivity to the skin in comparison to the standard gel interface. Pressure effects on resistance, as applied by an exoskeleton strapped over the electrode grid, were diminished using a double-sided adhesive foam tape. Test-retest evaluations revealed rather low reliability with ICCs ≤ 0.22. Viscous gel might provide advantages over pure gel in HD-EMG set-ups as channels are less prone to short-circuit.
机译:高密度肌电图是一种从大量电极推断肌肉活动的技术,只有几毫米的肌肉放在肌肉上。由于电极阵列的空间密度,需要关于皮肤电极接口的新推荐,在整个文献中不一致。此外,对于HD-EMG,成为与可穿戴机器人的接口的可行选择,必须调查各种对性能的压力影响。招募了11个受试者,通过比较抗皮肤和连通性,分析包括凝胶,粘性凝胶,导电涂料,Z-带和干燥配置的常见和新型导电材料的功能和稳健性。凝胶条件导致了最低的耐肤耐药性,整体中位数为65.72kΩ。与标准凝胶界面相比,粘性凝胶导致与皮肤的连接改善。通过双面粘合剂泡沫胶带在电极栅格上绑定的外骨骼施加的抗性的压力效应。测试重新测试评估显示了ICCS≤0.22的相当低的可靠性。粘性凝胶可以在HD-EMG设置中提供优于纯凝胶,因为通道不太容易发生短路。

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